Supporting device and terminal equipment
Through the linear contact and point contact of the support device combined with the counterweight component design, the problem of payment equipment shaking on the counter desktop is solved, achieving both stability and lightweight equipment.
Patent Information
- Application Number
- CN202422391357.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-24
- Publication Date
- 2025-07-29
- Estimated Expiration
- 2034-07-24
AI Technical Summary
Payment equipment is prone to shaking on the counter desktop, affecting the user experience and lifespan.
A support device is designed, including support columns, support uprights and support plates, using a combined contact method of line support members and point support members, combined with counterweight members of hollow structures, improve stability, and distribute different components through mounting components to reduce equipment thickness.
Improve the stability and user experience of payment equipment on counter desktops, meeting the needs of thin and light equipment.
Smart Images

Figure CN223167144U_ABST
Abstract
Description
[0001] This application is a divisional application of a utility model application with an application date of July 24, 2024, an application number of 202421762752.7, and an invention title of "Support Device and Terminal Device". Technical Field
[0002] One or more embodiments of this specification relate to the technical field of terminal devices, and in particular, to a support device and a terminal device. Background Art
[0003] With the development of technology, electronic payment has gradually become popular. For example, a merchant can configure a payment device, and then, the payment operation can be completed by collecting the user's payment code, face, etc. through the payment device.
[0004] The payment device usually needs to be placed on the countertop for use. Therefore, the stability of the payment device on the countertop is extremely important. If the payment device is prone to shaking after being placed on the countertop, it will seriously affect the use experience and service life of the payment device. Therefore, a solution that can improve the stability of the payment device is needed. Utility Model Content
[0005] In order to improve the stability of the payment device, one or more embodiments of this specification provide a support device and a terminal device.
[0006] In a first aspect, one or more embodiments of this specification provide a support device, including: a support column, the column body of the support column is a hollow structure, a wire support member is arranged on the bottom ring edge of the support column, and a weight member is arranged in the hollow part of the column body;
[0007] A support vertical plate, the support vertical plate is located on one side of the support column, a point support member is arranged at the bottom of the support vertical plate, and the bottom of the point support member is coplanar with the bottom of the wire support member;
[0008] A support flat plate, the support flat plate is located on the tops of the support column and the support vertical plate, and is fixed as a whole after being connected to the support column and the support vertical plate;
[0009] The support flat plate includes a first installation part and a second installation part; the first installation part is communicated with the hollow part in the column body and is used for installing a first component; the second installation part is used for installing a second component with a function different from that of the first component.
[0010] In a possible implementation, the first component is a near-field communication component, and the second component is a display component.
[0011] In one possible implementation, the bottom of the support column is inclined, sloping from the top side of the bottom to the bottom side of the bottom; the support vertical plate is close to the top side of the bottom.
[0012] In one possible implementation, the bottom of the support column is a plane, and the support vertical plate and the central axis of the support column are coplanar.
[0013] In one possible implementation, the point support member is located on the side away from the support column.
[0014] In one possible implementation, the support column further includes a bottom cover, which is detachably fastened to the bottom of the column body; the wire support member is disposed on the outer surface of the bottom cover.
[0015] In one possible implementation, the counterweight member includes a counterweight block cover, a counterweight block, and a fastener; the counterweight block cover is in interference fit with the inner wall of the column body and is fastened to the inner wall of the column body; the counterweight block is fixed to the counterweight block cover; the fastener sequentially passes through the counterweight block cover and the counterweight block and then is fixedly connected to the support flat plate.
[0016] In one possible implementation, a third mounting portion is provided on the counterweight block, and the third mounting portion is used for mounting a third component that is communicatively connected to the first component and / or the second component.
[0017] In one possible implementation, one side of the support vertical plate is fastened to the outer surface of the column body, and the top of the support vertical plate is fastened to the support flat plate.
[0018] In one possible implementation, the first mounting portion is fastened to the top of the support column, and the second mounting portion is fastened to the top of the support vertical plate.
[0019] In a second aspect, one or more embodiments of the present specification provide a terminal device, including a first component, a second component, and a support device as described in any one of the first aspects;
[0020] The first component is installed in the hollow portion of the column body and fastened to the first mounting portion; the second component is fixedly installed on the second mounting portion; the first component and the second component have different functions.
[0021] In one possible implementation, the first component is a near-field communication component, and the second component is a display component.
[0022] In summary, one or more embodiments of this specification provide a support device and a terminal device. The support device includes a support column, a support vertical plate, and a support flat plate. Among them, a wire support component is provided on the bottom ring edge of the support column, and a point support component is provided at the bottom of the support vertical plate. In this way, when the support device is placed on the countertop, through the combined support of line contact and point contact, the contact area between the support device and the countertop can be reduced, thereby reducing the influence of the flatness of the countertop on the stability of the support device and improving the stability of the support device. Among them, a weight component is provided in the hollow part inside the column body of the support column, so that the support stability for a relatively heavy supported object such as a display component can be improved. Among them, the support flat plate includes a first installation part and a second installation part. The first installation part communicates with the hollow part inside the column body and is used for installing a first component; the second installation part is used for installing a second component that has a different function from the first component. In this way, in the case where the supported object includes a first component and a second component, the support column with a weight component can be used to support the first component and can also cooperate with the support vertical plate to support the second component. Among them, the first installation part communicates with the hollow part inside the column body, so that some components of the first component can be installed in the hollow part inside the column body to reduce the exposed thickness of the first component, meet the user's requirements for a thin and light device, and improve the user experience. BRIEF DESCRIPTION OF THE DRAWINGS
[0023] To more clearly illustrate the technical solutions of one or more embodiments of this specification, the following will briefly introduce the drawings required for the description of the embodiments. Obviously, the following-described drawings are only some embodiments of one or more embodiments of this specification. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.
[0024] Figure 1 FIG. is a schematic structural diagram of a support device 10 provided by one or more embodiments of this specification;
[0025] Figure 2 is Figure 1 a schematic view in the direction A of;
[0026] Figure 3 FIG. is an exploded structural diagram of a support column 11 provided by one or more embodiments of this specification;
[0027] Figure 4 FIG. is a schematic diagram of a support column 11 provided by one or more embodiments of this specification;
[0028] Figure 5 FIG. is a schematic diagram of the positional relationship between a support column 11 and a support vertical plate 12 provided by one or more embodiments of this specification;
[0029] Figure 6Schematic diagram of the positional relationship between another support column 11 and the support vertical plate 12 provided for one or more embodiments of this specification;
[0030] Figure 7 Schematic diagram of the structure of a support flat plate 13 provided for one or more embodiments of this specification;
[0031] Figure 8 Schematic diagram of the structure of a support vertical plate 12 provided for one or more embodiments of this specification;
[0032] Figure 9 Exploded structural diagram of a support device 10 provided for one or more embodiments of this specification;
[0033] Figure 10 Cross-sectional view of a support device 10 provided for one or more embodiments of this specification;
[0034] Figure 11 For Figure 10 Enlarged view at position B in
[0035] Figure 12 For Figure 10 Enlarged view at position C in
[0036] Figure 13 For Figure 10 Cross-sectional view in the D-D direction of
[0037] Figure 14 For Figure 1 Top view of
[0038] Explanation of reference numerals
[0039] 10 - Support device;
[0040] 11 - Support column, 110 - Wire support component, 111 - Bottom cover, 112 - Counterweight component, 113 - Column body, 114 - Second card slot;
[0041] 1121 - Counterweight block gland, 1122 - Counterweight block, 1123 - Fastener;
[0042] 11221 - Third installation part;
[0043] 12 - Support vertical plate, 120 - Point support component, 121 - First card block, 122 - Hook, 123 - Second card block;
[0044] 1221 - First end face, 1222 - Second end face, 1223 - Top face;
[0045] 13 - Support flat plate, 130 - First card slot, 131 - Barbs, 132 - First installation part, 133 - Second installation part;
[0046] 1301 - The third end face, 1302 - The fourth end face;
[0047] 14 - Pressure plate, 140 - Clamping projection;
[0048] 15 - Buffer member. Specific implementation manners
[0049] The following further details one or more embodiments of this specification through the accompanying drawings and examples. Through these descriptions, the features and advantages of one or more embodiments of this specification will become clearer and more definite.
[0050] Here, the special term "exemplary" means "serving as an example, embodiment, or illustration". Any embodiment described as "exemplary" here does not have to be interpreted as superior to or better than other embodiments. Although various aspects of the embodiments are shown in the accompanying drawings, the drawings do not have to be drawn to scale unless otherwise specified.
[0051] In addition, the technical features involved in different embodiments of one or more embodiments of this specification described below can be combined with each other as long as they do not conflict with each other.
[0052] For the sake of easy understanding, the application scenarios of the technical solutions provided by one or more embodiments of this specification are described below first.
[0053] For products that need to be placed on the countertop for use, their stability is an important indicator to measure the user experience. Taking a payment device as an example, if the payment device is prone to shaking after being placed on the countertop, it will seriously affect the use experience and service life of the payment device.
[0054] To improve the stability of products that need to be placed on the countertop for use, one or more embodiments of this specification provide a support device and a terminal device.
[0055] The following first introduces a support device provided by one or more embodiments of this specification.
[0056] Figure 1 It is a schematic structural diagram of a support device provided by one or more embodiments of this specification.
[0057] As Figure 1 shown, one or more embodiments of this specification provide a support device 10, which may include a support column 11, a support vertical plate 12, and a support flat plate 13. Among them, the support vertical plate 12 is located on one side of the support column 11, the support flat plate 13 is located on the top of the support column 11 and the support vertical plate 12, and after the support flat plate 13 is connected to the support column 11 and the support vertical plate 12, they are fixed as a whole.
[0058] Figure 2 is Figure 1 a schematic view in the A direction of. As Figure 1 and Figure 2 shown, a wire support member 110 is provided at the bottom ring edge of the support column 11, and a point support member 120 may be provided at the bottom of the support vertical plate 12. The bottom of the point support member 120 and the bottom of the wire support member 110 are coplanar. In this way, when the support device 10 is placed on a contact surface such as a countertop, the wire support member 110 and the point support member 120 in the support device 10 are in contact with the countertop. Among them, the wire support member 110 forms a line contact with the countertop, and the point support member 120 forms a point contact with the countertop. In this way, through the cooperation of the line contact and the point contact, the contact area between the support device 10 and the countertop can be reduced, thereby reducing the influence of the flatness of the countertop on the stability of the support device 10 and improving the stability of the support device 10.
[0059] One or more embodiments of this specification do not limit the specific structure of the wire support member 110. For example, as Figure 2 shown, the wire support member 110 may be an uninterrupted ring-shaped wire structure. For another example, the wire support member 110 may also include a plurality of discontinuous wire structures or point structures (not shown in the figure). Among them, the plurality of discontinuous wire structures or point structures are arranged along the bottom edge of the support column 11 to form the wire support member 110.
[0060] It should be noted that if the bottom of the support column 11 is not provided with a bottom cover, the wire support member 110 may be provided at the bottom ring edge position of the support column 11. For example, the bottom ring edge position of the support column 11 may be an end face formed by the extension of the thickness of the support column 11 itself. If the bottom of the support column 11 is provided with a bottom cover, the wire support member 110 may be provided on the bottom cover.
[0061] Exemplarily, as Figure 2 and 3 shown, the support column 11 may further include a bottom cover 111. The bottom cover 111 is detachably fastened to the bottom of the column body 113 of the support column 11, and the wire support member 110 is provided on the outer surface of the bottom cover 111. For example, the bottom cover 111 may be detachably fastened to the bottom of the column body 113 of the support column 11 by means of snap fit, interference fit, etc.
[0062] It should be noted that if the bottom of the support column 11 is provided with a bottom cover 111, the wire support member 110 may also be provided at the bottom ring edge position of the support column 11. One or more embodiments of this specification do not limit this.
[0063] Among them, as Figure 2As shown, the bottom of the supporting vertical plate 12 can extend obliquely from the side close to the supporting column 11 to the side far from the supporting column 11, where the side far from the supporting column 11 is slightly higher than the side close to the supporting column 11. In this way, after the wire supporting member 110 and the point supporting member 120 contact the countertop, there is a certain gap between the bottom of the supporting vertical plate 12 and the countertop, thereby preventing the bottom of the supporting vertical plate 12 from forming a line contact with the countertop and affecting the stability of the supporting device 10.
[0064] One or more embodiments of this specification do not limit the specific position of the point supporting member 120 at the bottom of the supporting vertical plate 12. For example, the point supporting member 120 can be located on the side far from the supporting column 11. In this way, due to the large distance between the point supporting member 120 and the wire supporting member 110, the point supporting member 120 and the wire supporting member 110 can cooperate to provide a more stable supporting effect.
[0065] To further improve the stability of the contact between the wire supporting member 110 and the point supporting member 120 and the contact surface, the wire supporting member 110 and the point supporting member 120 can be made of materials with anti-slip properties. For example, materials with anti-slip properties can include silicone, nitrile rubber, thermoplastic polyurethane elastomer rubber, etc., and one or more embodiments of this specification do not limit this.
[0066] Optionally, double-sided tape (not shown in the figure) can be pasted at the bottom of the wire supporting member 110 and the point supporting member 120 to improve the anti-slip effect between the wire supporting member 110 and the point supporting member 120 and the contact surface.
[0067] Optionally, suction cups (not shown in the figure) can also be provided at the bottom of the wire supporting member 110 and the point supporting member 120. In this way, in the case where the contact surface is a smooth surface, the suction cups can be adsorbed on the contact surface, thereby improving the anti-slip effect between the wire supporting member 110 and the point supporting member 120 and the contact surface.
[0068] As Figure 3 shown, the column body 113 of the supporting column 11 can be a hollow structure, and a weight component 112 can be arranged in the hollow part of the column body 113. The weight component 112 can increase the stability of the supporting device to be able to support a relatively heavy object to be supported (such as a display component).
[0069] In an implementable way, as Figure 3 shown, the weight component 112 can include a weight block cover 1121, a weight block 1122, and a fastener 1123.
[0070] Among them, the counterweight gland 1121 can be in interference fit with the inner wall of the column 113 and fastened to the inner wall of the column 113. For example, the counterweight gland 1121 can be provided with an elastic washer around the edge, and the elastic washer and the inner wall of the column 113 are mutually extruded to generate deformation, so that the counterweight gland 1121 can be fastened to the inner wall of the column 113.
[0071] The counterweight 1122 can be fixed to the counterweight gland 1121. For example, the counterweight 1122 can be connected to the counterweight gland 1121 by means of bolts, rivets, etc. For another example, the counterweight 1122 and the counterweight gland 1121 can be provided with protrusions and grooves that can cooperate with each other. In this way, the counterweight 1122 can be fixed to the counterweight gland 1121 through the cooperation of the protrusions and grooves.
[0072] Among them, the counterweight 1122 can be made of materials with a relatively large density such as iron blocks and cement blocks.
[0073] The fastener 1123 can sequentially pass through the counterweight gland 1121 and the counterweight 1122 and then be fixedly connected to the support flat plate 13. The fastener 1123 can be a bolt, a screw, a pin, etc., and one or more embodiments of this specification do not limit this.
[0074] Exemplarily, as Figure 3 and Figure 4 shown, the fastener 1123 can include a plurality of long bolts. After the long bolts sequentially pass through the counterweight gland 1121 and the counterweight 1122, there is still a part of the bolt protruding from the top of the column 113. This protruding part of the bolt can be used to pass through the support flat plate 13 and connect to the support flat plate 13. In this way, the support flat plate 13 can be connected to the counterweight gland 1121 and the counterweight 1122 through the long bolts. Among them, the part of the long bolt passing through the support flat plate 13 can also be used to connect to a first component (not shown in the figure). The first component is an object to be supported that is installed in cooperation with the support column 11. For details, please refer to the subsequent introduction.
[0075] In this way, the counterweight 1122 is fixed in the hollow part inside the column 113 through the counterweight gland 1121, the fastener 1123 and the support flat plate 13, which can prevent the counterweight 1122 from shaking in the hollow part inside the column 113 during use and affecting the stability of the support device 10. In addition, this method does not need to damage the strength of the column 113 itself, so it will not affect the support strength of the column 113.
[0076] In one implementable manner, the counterweight member 112 may also include a counterweight block 1122, where the counterweight block 1122 may be fixed to the inner wall within the column body 113 of the support column 11. For example, the counterweight block 1122 may be connected to the inner wall within the column body 113 by means such as bolts and rivets. This manner has a simple structure and is easy to operate.
[0077] As Figure 1 shown, a support flat plate 13 is provided at the top of the support vertical plate 12 and the support column 11. One or more embodiments of this specification do not limit the arrangement position of the support vertical plate 12 relative to the support column 11 and the support flat plate 13.
[0078] Exemplarily, as Figure 5 shown, if the bottom of the support column 11 is inclined, inclined from the top end M side of the bottom to the bottom end N side of the bottom, the support vertical plate 12 may be close to the top end M side of the bottom of the support column 11. Among them, the distance from the top end M to the top of the support column 11 is less than the distance from the bottom end N to the top of the support column 11 (see Figure 13 for reference). In this way, the support vertical plate 12 can be closer to the front side of the support flat plate 13, so as to improve the support ability of the support vertical plate 12 for the support flat plate 13 when the bottom of the support column 11 is inclined.
[0079] Exemplarily, as Figure 6 shown, if the bottom of the support column 11 is a plane, the support vertical plate 12 may be coplanar with the central axis L1 of the support column 11 ( Figure 6 the point at the bottom of the support column 11 in the figure represents the central axis L1, and the dotted line represents that the support vertical plate 12 is coplanar with the central axis L1 of the support column 11). In this way, the support vertical plate 12 can be located near the middle position of the support flat plate 13, so as to better support the support flat plate 13 in combination with the support column 11.
[0080] One or more embodiments of this specification do not limit the specific implementation manner of fixing the support column 11, the support vertical plate 12, and the support flat plate 13 together.
[0081] For example, one side of the support vertical plate 12 may be fastened to the outer surface of the column body 113, and the top of the support vertical plate 12 may be fastened to the support flat plate 13.
[0082] Exemplarily, as Figure 7 shown, a first card slot 130 may be formed on the support flat plate 13. As Figure 8 shown, a first card block 121 is provided at the top of the support vertical plate 12, and a catch 122 is provided on the first card block 121. As Figure 9 and Figure 10As shown, after the first clamping block 121 penetrates into the first clamping groove 130, the clamping hook 122 can be clamped onto the supporting flat plate 13, and there is a gap between one end of the first clamping block 121 away from the clamping hook 122 and the first clamping groove 130.
[0083] One or more embodiments of this specification do not limit the specific implementation manner in which the clamping hook 122 is clamped onto the supporting flat plate 13.
[0084] Exemplarily, as Figure 9 shown, the first clamping block 121 includes a first end face 1221 and a second end face 1222 that are oppositely arranged, and a top face 1223 located between the first end face 1221 and the second end face 1222. Among them, the first end face 1221 is close to the side wall of the supporting column 11, the second end face 1222 is away from the side wall of the supporting column 11, and the clamping hook 122 can be arranged on the second end face 1222.
[0085] As Figure 10 shown, the first clamping groove 130 includes a third end face 1301 and a fourth end face 1302 that are oppositely arranged. Among them, the third end face 1301 is close to the side wall of the supporting column 11, and the fourth end face 1302 is away from the side wall of the supporting column 11. As Figure 10 and Figure 11 shown, a barb 131 that cooperates with the clamping hook 122 can be arranged on the fourth end face 1302. In this way, after the first clamping block 121 penetrates into the first clamping groove 130, the first clamping block 121 can be pushed to move towards the fourth end face 1302 of the first clamping groove 130, so that the clamping hook 122 on the first clamping block 121 cooperates with the barb 131 on the first clamping groove 130 for clamping connection.
[0086] After the clamping hook 122 on the first clamping block 121 cooperates with the barb 131 on the first clamping groove 130 for clamping connection, a gap is formed between the first end face 1221 of the first clamping block 121 and the third end face 1301 of the first clamping groove 130.
[0087] In order to solve the problem that due to the existence of the gap, the first clamping block 121 slides in the first clamping groove 130, affecting the connection stability between the supporting flat plate 13 and the supporting vertical plate 12. The supporting device 10 in one or more embodiments of this specification may further include a pressing plate 14.
[0088] As Figure 10 and Figure 12 shown, a clamping protrusion 140 can be arranged on the pressing plate 14. The pressing plate 14 is fastened to the part of the first clamping block 121 that penetrates into the first clamping groove 130, and the clamping protrusion 140 is clamped in the gap between the first end face 1221 and the third end face 1301.
[0089] Exemplarily, the pressing plate 14 with the locking protrusion 140 can be an L-shaped pressing plate. After the locking hook 122 on the first locking block 121 is engaged with the barb 131 on the first slot 130, the locking protrusion 140 can be locked in the gap between the first end face 1221 and the third end face 1301. Then, the pressing plate 14 can be connected to the top face 1223 of the first locking block 121 by means of screws or the like. In this way, the setting of the locking protrusion 140 can limit the sliding of the first locking block 121 in the length L direction of the supporting flat plate 13. The connection between the pressing plate 14 and the top face 1223 of the first locking block 121 can limit the sliding of the first locking block 121 in the thickness H direction of the supporting flat plate 13.
[0090] Optionally, after the locking protrusion 140 is locked in the gap, the pressing plate 14 and the supporting flat plate 13 can also be connected by means of screws or the like.
[0091] Optionally, as Figure 9 and Figure 13 shown, a buffer member 15 can also be provided between the pressing plate 14 and the first locking block 121, and the buffer member 15 is filled between the pressing plate 14 and the first locking block 121. For example, the buffer member 15 can be provided between the locking protrusion 140 and the first end face 1221 of the first locking block 121, and between the pressing plate 14 and the top face 1223 of the first locking block 121. Among them, the buffer member 15 can be selected from elastic members, such as silica gel pads, rubber pads, etc.
[0092] In this way, the buffer member 15 can further fill the manufacturing tolerances and gaps formed between the pressing plate 14 and the first locking block 121, prevent the first locking block 121 from sliding in the first slot 130, and improve the stability of the connection between the supporting flat plate 13 and the supporting vertical plate 12.
[0093] As Figure 9 shown, a second locking block 123 can be provided on one side edge of the supporting vertical plate 12, and a second slot 114 can be opened on the side wall of the column body of the support column 11. As Figure 10 shown, the second locking block 123 penetrates into the second slot 114 and is fastened to the side wall of the column body of the support column 11.
[0094] In this way, through the cooperation of the second locking block 123 and the second slot 114, the first locking block 121 can be better pressed in the first slot 130, thereby preventing the first locking block 121 from falling off the first slot 130 and improving the overall stability of the support device 10.
[0095] It should be noted that the above embodiments are only for illustrative purposes by fastening one side of the support vertical plate 12 to the outer surface of the column through the second card slot 114 and the second card block 123, and do not represent a limitation on the specific implementation of fastening one side of the support vertical plate 12 to the outer surface of the column. For example, one side of the support vertical plate 12 can also be fixedly connected to the outer surface of the column through a connecting member. For another example, the fastening connection can also be achieved by the mutual extrusion of one side of the support vertical plate 12 and the outer surface of the column.
[0096] As Figure 1 shown, after the support column 11, the support vertical plate 12 and the support flat plate 13 are fixed together, a certain angle is formed between the support vertical plate 12 and the support flat plate 13, and this angle can be any angle greater than 0° and less than 180°. For example, this angle can be 90°. Correspondingly, the object to be supported, such as the first component (not shown in the figure) and the second component (not shown in the figure), can be installed on the support flat plate 13.
[0097] Exemplarily, as Figure 14 shown, the support flat plate 13 can include a first installation part 132 and a second installation part 133. Among them, the first installation part 132 can communicate with the hollow part inside the column body of the support column 11 and is used for installing the first component. The second installation part 133 can be used for installing the second component, and the second component and the first component can be components with different functions.
[0098] As Figure 1 and Figure 14 shown, the first installation part 132 can be fastened to the top of the support column 11, and the second installation part 133 can be fastened to the top of the support vertical plate 12.
[0099] Since the first installation part 132 can communicate with the hollow part inside the column body of the support column 11, part of the first component can be installed in the hollow part inside the column body of the support column 11. In addition, if there is also a third component that cooperates with the first component and / or the second component, then this third component can also be installed in the hollow part inside the column body of the support column 11 to reduce the thickness of the first component and / or the second component itself, meet the user's demand for thin and light devices, and improve the user experience.
[0100] Exemplarily, taking the first component as a near field communication (NFC) component and the second component as a display component as an example, for the first component and the second component to achieve corresponding functions, a third component that communicates with the first component and the second component usually needs to be configured. For example, for the NFC component, the third component can include a processor, a chip, a circuit, a power supply, etc. related to NFC. For the display component, the third component can include a processor, a chip, a circuit, a power supply, etc. related to display.
[0101] In this way, a third component communicatively connected to the first component and the second component, or a third component communicatively connected to the first component, or a third component communicatively connected to the second component can be installed in the hollow part inside the column body of the support column 11. In this way, by hiding the third component inside the column body of the support column 11, the thickness of the first component and / or the second component itself can be reduced.
[0102] Optionally, as Figure 3 shown, a third mounting portion 11221 can be provided on the counterweight 1122, and the third mounting portion 11221 can be used to mount the third component. For example, the third mounting portion 11221 can be a notch reserved on the counterweight 1122, and the third component can be installed in this notch. In this way, the layout inside the column body of the support column 11 can be made more compact and reasonable, and the utilization rate of the space inside the column body can be improved.
[0103] Among them, the first component can be detachably or fixedly connected to the first mounting portion 132, and the second component can be detachably or fixedly connected to the second mounting portion 133. One or more embodiments of this specification do not limit this. That is to say, the first component and / or the second component can be used independently of the support device 10, or the first component and / or the second component and the support device 10 can be fixed as a whole for use.
[0104] Exemplarily, during use, the first component can be used independently of the support device 10. For example, the first mounting portion 132 can include a first supporting portion for supporting the first component. In this way, the first component can be placed on the first supporting portion of the first mounting portion 132 for use, or the first component can also be taken off from the first supporting portion of the first mounting portion 132 for independent use. Similarly, the second component can also be used independently of the support device 10. For example, the second mounting portion 133 can include a second supporting portion for supporting the second component. In this way, the second component can be placed on the second supporting portion of the second mounting portion 133 for use, or the second component can also be taken off from the second supporting portion of the second mounting portion 133 for independent use. In this way, the support device 10, the first component, and the second component can be more flexibly used in cooperation.
[0105] It should be noted that one or more embodiments of this specification do not limit the specific structures of the first supporting portion and the second supporting portion. For example, the first supporting portion can be a first elastic card slot arranged circumferentially along the first mounting portion 132. In this way, the first component can be installed on the first mounting portion 132 by being pressed into the first elastic card slot. Similarly, the second supporting portion can be an elastic card slot arranged circumferentially along the second mounting portion 133. In this way, the second component can be installed on the second mounting portion 133 by being pressed into the second elastic card slot.
[0106] In another example, the first component and the first mounting portion 132 can be fixedly connected together, and the second component and the second mounting portion 133 can be fixedly connected together. Taking the NFC component as an example of the first component, the NFC component can include a coil, a circuit, a housing, etc. The coil, the circuit, the housing, etc. can be fixedly connected to the first mounting portion 132. Among them, components such as the coil and the circuit in the NFC component can be installed in the hollow part inside the column body of the support column 11, and the housing of the NFC component can be fixedly installed on the first mounting portion 132, so that the first component and the support device 10 can be fixedly integrated for use.
[0107] Similarly, taking the display component as an example of the second component, the display component can include a backplane, a middle frame, and a display screen. The backplane and the display screen are arranged opposite to each other, and the middle frame is located between the backplane and the display screen. Among them, the backplane and the middle frame can serve as the second mounting portion 133. In this way, it is equivalent to fixedly connecting the second component and the second mounting portion 133 together. Thus, the second component and the support device 10 can be fixedly integrated for use.
[0108] Optionally, the middle frame of the display component can extend to the top of the support column 11 to form an annular middle frame corresponding to the top of the support column 11, and this annular middle frame can serve as the first mounting portion 132.
[0109] Taking the first component as the NFC component and the second component as the display component as an example below, the first component and the second component will be exemplarily described.
[0110] The functions of the NFC component can include that after a user device with NFC function such as a watch or a mobile phone approaches the NFC component, the NFC component can establish an NFC communication connection with the user device.
[0111] Exemplarily, the NFC component in one or more embodiments of this specification can be applied to a payment scenario. For example, in a payment scenario, a user device (taking a mobile phone as an example below) can be used as a card reader, the NFC component can be used as a tag or a virtual card, and the NFC component can have a payment processing function. The payment process can be as follows:
[0112] The mobile phone approaches the NFC component and establishes an NFC communication connection with the NFC component;
[0113] The mobile phone obtains NFC tag information including merchant information, payment applications, etc. from the NFC component;
[0114] The mobile phone displays a payment confirmation interface of the payment application based on the obtained NFC tag information;
[0115] After receiving the payment confirmation information entered by the user through the payment confirmation interface, the mobile phone sends a payment identification code authorization request to the server corresponding to the payment application, instructing the server to issue a payment identification code to the NFC component;
[0116] The server issues the payment identification code of the mobile phone user to the NFC component;
[0117] The NFC component initiates a payment request to the server based on the received payment identification code to complete the payment.
[0118] Optionally, the payment identification code of the user to whom the mobile phone belongs may be a payment code.
[0119] For another example, in a payment scenario, a mobile phone can act as a card reader, an NFC component can act as a tag or a virtual card, and the NFC component may not have a payment processing function. The payment process may include the following:
[0120] The mobile phone is placed close to the NFC component to establish an NFC communication connection with the NFC component;
[0121] The mobile phone obtains NFC tag information including merchant information, payment application information, etc. from the NFC component;
[0122] The mobile phone displays the payment confirmation interface of the payment application based on the obtained NFC tag information;
[0123] After receiving the payment confirmation information input by the user through the payment confirmation interface, the mobile phone sends a payment identification code acquisition request to the server corresponding to the payment application, instructing the server to send the payment identification code of the user to it;
[0124] The server sends the payment identification code of the user to the mobile phone;
[0125] Based on the received payment identification code and NFC tag information, the mobile phone initiates a payment request to the server to complete the payment.
[0126] Optionally, the payment identification code of the user to whom the mobile phone belongs may be a payment code.
[0127] As can be seen, in the above payment method, the mobile phone can act as an NFC card reader, and the NFC component can act as an NFC tag or virtual card. The NFC tag can be a passive electronic tag. In this method, the NFC tag is small and can be conveniently placed at the location where payment is required. In other words, in this payment scenario, the NFC component is relatively small, so it can be installed on the top of the support column.
[0128] Similarly, the NFC component in one or more embodiments of this specification can also be applied to scenarios such as ordering food and ticket services. Details are not provided here one by one, and the application scenarios of the NFC component in one or more embodiments of this specification are not limited.
[0129] Among them, the function of the display component can include implementing user interaction based on the display function.
[0130] Exemplarily, the display component in one or more embodiments of this specification can be applied to a payment scenario. For example, the display component can display a payment code, so that the user can scan the payment code displayed on the display component through the user device to perform a payment operation.
[0131] Exemplarily, the display component in one or more embodiments of this specification can be applied to an ordering food scenario. For example, the display component can be used to display the merchant menu and can implement the ordering food function based on the user's selection operation of the dishes in the merchant menu.
[0132] Exemplarily, the display component in one or more embodiments of this specification can be applied to a ticket service scenario. For example, the display component can display ticket information such as scenic spot tickets and train tickets, and can implement corresponding ticket service functions based on the user's operations of viewing, purchasing, or canceling the ticket information such as scenic spot tickets and train tickets.
[0133] Exemplarily, the display component can also include an image acquisition module. In this way, the display component can collect the user's face image through the image acquisition module for face recognition. In this way, the display component can be used to implement the face payment function. For another example, the display component can collect the payment code on the user device through the image acquisition module to implement the code scanning payment function.
[0134] It should be noted that the specific application scenarios of the above-listed NFC component and display component can be used in any combination, and one or more embodiments of this specification do not limit this. For example, in an optional example, the NFC component can implement payment based on the NFC function, and the display component can implement payment based on the display function. In this way, different payment method options can be provided for the user to improve the user experience. For another example, in another optional example, the NFC component can implement payment based on the NFC function, and the display component can implement payment based on the image acquisition function. Details are not listed one by one here.
[0135] It should also be noted that the NFC component and the display component are not limited to the application scenarios such as payment function, ordering food function, and ticket service function listed in the above embodiments, and can also be applied to more scenarios, which are not limited in one or more embodiments of this specification.
[0136] In summary, the supporting device provided by one or more embodiments of this specification includes a support column 11, a support vertical plate 12, and a support flat plate 13. Among them, a wire support member 110 is provided at the bottom ring edge of the support column 11, and a point support member 120 is provided at the bottom of the support vertical plate 12. In this way, when the supporting device 10 is placed on the countertop, through the combined support of line contact and point contact, the contact area between the supporting device 10 and the countertop can be reduced, thereby reducing the influence of the flatness of the countertop on the stability of the supporting device 10 and improving the stability of the supporting device 10. Among them, a weight member 112 is provided in the hollow part inside the column body of the support column 11. In this way, the support stability for a relatively heavy supported object such as a display component can be improved. Among them, the support flat plate 13 includes a first installation part 132 and a second installation part 133. The first installation part 132 communicates with the hollow part inside the column body and is used for installing the first component; the second installation part 133 is used for installing a second component with a function different from that of the first component. In this way, when the supported object includes the first component and the second component, the support column 11 can be used to support the first component and can also cooperate with the support vertical plate 12 to support the second component. Among them, the first installation part 132 communicates with the hollow part inside the column body. In this way, some components of the first component can be installed in the hollow part inside the column body to reduce the exposed thickness of the first component, meet the user's requirements for thin and light devices, and improve the user experience.
[0137] Based on the supporting device provided by one or more embodiments of this specification, one or more embodiments of this specification also provide a terminal device. This terminal device can adopt the above-mentioned supporting device to improve the stability of the terminal device.
[0138] A terminal device provided by one or more embodiments of this specification includes a first component, a second component, and a supporting device 10.
[0139] Among them, the first component can be installed in the hollow part inside the column body and fastened to the first installation part 132. The second component can be fixedly installed on the second installation part 133, and the first component and the second component have different functions. For example, the first component can be an NFC component, and the second component can be a display component.
[0140] It should be noted that the first component, the second component, and the supporting device 10 can refer to the description in the supporting device embodiment section and will not be elaborated here.
[0141] Among them, the terminal device can implement corresponding functions according to the functions configured by the first component and the second component. For example, the terminal device can be a payment device, a meal ordering service device, an electronic ticket service device, etc.
[0142] Exemplarily, taking the terminal device as a payment device as an example, the user can perform a payment operation by bringing the user device close to the NFC component in the terminal device. Alternatively, the user can perform a payment operation by scanning the collection code displayed on the display component in the terminal device. Alternatively, the user can display a payment code on the user device to the display component in the terminal device, so that the display component in the terminal device can perform a payment operation by scanning the payment code on the user device.
[0143] In use, the support device 10 can be placed on the countertop, and the top of the support device 10 supports a first component and a second component. Among them, the first component and the second component can face the customer for the customer to perform operations such as payment.
[0144] It can be understood that the above embodiments are only examples, and the above embodiments can be deformed during actual implementation. Those skilled in the art can understand that the deformation methods of the above embodiments that do not require creative labor fall within the protection scope of one or more embodiments of this specification, and will not be elaborated in the embodiments.
[0145] Each embodiment in this specification is described in a progressive manner. The same or similar parts between the embodiments can be referred to each other, and the key point of each embodiment is to illustrate the differences from other embodiments. In particular, for the terminal device embodiment, since it is basically similar to the support device embodiment, the description is relatively simple, and the relevant parts can be referred to the partial description of the support device embodiment.
[0146] In this article, relational terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the terms "including", "comprising" or any other variant thereof are intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements not only includes those elements, but also includes other elements not expressly listed, or also includes elements inherent to such process, method, article or device. For those of ordinary skill in the art, the specific meanings of the above terms in one or more embodiments of this specification can be understood according to specific circumstances.
[0147] It should be noted that, without conflict, the features of one or more embodiments and the embodiments in this specification can be combined with each other. One or more embodiments of this specification are not limited to any single aspect, nor to any single embodiment, nor to any arbitrary combination and / or permutation of these aspects and / or embodiments. Moreover, each aspect and / or embodiment of one or more embodiments of this specification can be used alone or in combination with one or more other aspects and / or their embodiments.
[0148] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of one or more embodiments of this specification, rather than to limit them; although the foregoing embodiments have been described in detail with reference to one or more embodiments of this specification, those of ordinary skill in the art should understand that they can still modify the technical solutions recorded in the foregoing embodiments, or perform equivalent replacements on some or all of the technical features; and these modifications or replacements do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of one or more embodiments of this specification, and they should all be covered by the scope of the claims and the specification of one or more embodiments of this specification.
[0149] The above has described one or more embodiments of this specification in combination with optional implementation manners. However, these implementation manners are only exemplary and only serve an illustrative role. On this basis, various replacements and improvements can be made to one or more embodiments of this specification, and these all fall within the protection scope of one or more embodiments of this specification.
Claims
1. A support device, characterized in that, Comprising: Support columns, with wire support components arranged at the bottom ring edge of the support columns; Support vertical plates, the support vertical plates are located on one side of the support columns, point support components are arranged at the bottoms of the support vertical plates, and the bottoms of the point support components and the bottoms of the wire support components are coplanar; Support flat plates, the support flat plates are located at the tops of the support columns and the support vertical plates, and are fixed as a whole after being connected to the support columns and the support vertical plates, for installing the object to be supported.
2. The support device according to claim 1, characterized in that, The support flat plate includes a first installation part and a second installation part; the object to be supported includes a first component and a second component with different functions; the first installation part is used for installing the first component; the second installation part is used for installing the second component.
3. The support device according to claim 2, characterized in that, The first component is a near-field communication component, and the second component is a display component.
4. The support device according to claim 3, characterized in that, The display component includes an image acquisition module.
5. The support device according to claim 2, characterized in that, The first installation part includes a first elastic card slot for clamping the first component in the first elastic card slot; the second installation part includes a second elastic card slot for clamping the second component in the second elastic card slot.
6. The support device according to claim 3, wherein, The display component includes a back plate, a middle frame and a display screen, the back plate and the display screen are arranged oppositely, and the middle frame is located between the back plate and the display screen.
7. The support device according to claim 2, characterized in that, The column body of the support column is a hollow structure, and the first installation part communicates with the hollow part inside the column body; a third component communicatively connected to the first component and / or the second component is installed in the hollow part inside the column body.
8. The support device according to claim 1, wherein The column body of the support column is a hollow structure, and a weight component is arranged in the hollow part inside the column body.
9. The support device according to claim 1, characterized in that, The bottom of the support column is inclined, sloping from one side of the top end of the bottom to one side of the bottom end of the bottom; the support vertical plate is close to the top end side of the bottom.
10. A terminal device, characterized in that, Including a first component, a second component and the support device according to any one of claims 1 to 9; The first component and the second component are installed on the support flat plate; the first component and the second component have different functions.